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Inhibitory Plasticity Permits the Recruitment of CA2 Pyramidal Neurons by CA3

机译:抑制性可塑性允许CA3招募CA2锥体神经元。

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摘要

Area CA2 is emerging as an important region for hippocampal memory formation. However, how CA2 pyramidal neurons (PNs) are engaged by intrahippocampal inputs remains unclear. Excitatory transmission between CA3 and CA2 is strongly inhibited and is not plastic. We show in mice that different patterns of activity can in fact increase the excitatory drive between CA3 and CA2. We provide evidence that this effect is mediated by a long-term depression at inhibitory synapses (iLTD), as it is evoked by the same protocols and shares the same pharmacology. In addition, we show that the net excitatory drive of distal inputs is also increased after iLTD induction. The disinhibitory increase in excitatory drive is sufficient to allow CA3 inputs to evoke action potential firing in CA2 PNs. Thus, these data reveal that the output of CA2 PNs can be gated by the unique activity-dependent plasticity of inhibitory neurons in area CA2.
机译:区域CA2逐渐成为海马记忆形成的重要区域。但是,尚不清楚海马内输入如何参与CA2锥体神经元(PNs)。 CA3和CA2之间的兴奋性传递受到强烈抑制,并且不是可塑性的。我们在小鼠中显示出不同的活动模式实际上可以增加CA3和CA2之间的兴奋性驱动力。我们提供的证据表明,这种作用是由抑制突触的长期抑制介导的(iLTD),因为它是由相同的方案引起的,并且具有相同的药理作用。此外,我们表明,iLTD诱导后,远端输入的净兴奋性驱动力也增加了。兴奋性驱动力的抑制性增加足以使CA3输入激发CA2 PN中的动作电位触发。因此,这些数据表明,CA2 PNs的输出可以通过CA2区域中抑制神经元独特的活动依赖性可塑性来控制。

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